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A Novel Fiber Optic Based Surveillance System for Prevention of Pipeline Integrity Threats

机译:基于光纤的新型监视系统可防止管道完整性威胁

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摘要

This paper presents a novel surveillance system aimed at the detection and classification of threats in the vicinity of a long gas pipeline. The sensing system is based on phase-sensitive optical time domain reflectometry (ϕ-OTDR) technology for signal acquisition and pattern recognition strategies for threat identification. The proposal incorporates contextual information at the feature level and applies a system combination strategy for pattern classification. The contextual information at the feature level is based on the tandem approach (using feature representations produced by discriminatively-trained multi-layer perceptrons) by employing feature vectors that spread different temporal contexts. The system combination strategy is based on a posterior combination of likelihoods computed from different pattern classification processes. The system operates in two different modes: (1) machine + activity identification, which recognizes the activity being carried out by a certain machine, and (2) threat detection, aimed at detecting threats no matter what the real activity being conducted is. In comparison with a previous system based on the same rigorous experimental setup, the results show that the system combination from the contextual feature information improves the results for each individual class in both operational modes, as well as the overall classification accuracy, with statistically-significant improvements.
机译:本文提出了一种新颖的监视系统,旨在对长输气管道附近的威胁进行检测和分类。传感系统基于相位敏感的光学时域反射仪(ϕ-OTDR)技术,用于信号采集和用于威胁识别的模式识别策略。该建议在功能级别上合并上下文信息,并将系统组合策略应用于模式分类。在特征级别的上下文信息基于串联方法(使用由经过区别训练的多层感知器生成的特征表示),方法是采用散布不同时间上下文的特征向量。系统组合策略基于从不同模式分类过程计算出的似然度的后验组合。该系统以两种不同的模式运行:(1)机器+活动识别,识别特定机器正在执行的活动,以及(2)威胁检测,旨在检测威胁,无论实际进行的活动是什么。与基于相同严格实验设置的先前系统相比,结果表明,根据上下文特征信息进行的系统组合可改善两种操作模式下每个类别的结果以及总体分类准确性,并且具有统计学意义改进。

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